• Acta Optica Sinica
  • Vol. 41, Issue 8, 0823019 (2021)
Mengyu Wang1、2, Yu Yang2, Tao Wu1、*, Bin Liu1, Yanjun Fu1, and Keyi Wang2、**
Author Affiliations
  • 1Key Laboratory of Nondestructive Test of Ministry of Education, Nanchang Hangkong University, Nanchang, Jiangxi 330063, China
  • 2Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei, Anhui 230026, China
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    DOI: 10.3788/AOS202141.0823019 Cite this Article Set citation alerts
    Mengyu Wang, Yu Yang, Tao Wu, Bin Liu, Yanjun Fu, Keyi Wang. Fabrication and Resonance Characteristic Analysis of Spheroid Calcium Fluoride Millimeter Crystalline Microcavity[J]. Acta Optica Sinica, 2021, 41(8): 0823019 Copy Citation Text show less
    Diagram of spheroid crystalline microcavity, fabricated crystalline microcavity, and section field distribution of fundamental mode of crystalline microcavity. (a) Schematic of spheroid crystalline microcavity; (b) fabricated crystalline microcavity; (c) section field distribution of fundamental mode of crystalline microcavity
    Fig. 1. Diagram of spheroid crystalline microcavity, fabricated crystalline microcavity, and section field distribution of fundamental mode of crystalline microcavity. (a) Schematic of spheroid crystalline microcavity; (b) fabricated crystalline microcavity; (c) section field distribution of fundamental mode of crystalline microcavity
    Schematic of integrated experimental setup for crystalline microcavity fabrication
    Fig. 2. Schematic of integrated experimental setup for crystalline microcavity fabrication
    Flow chart of crystalline microcavity fabrication process and surface images obtained by high-powered microscope
    Fig. 3. Flow chart of crystalline microcavity fabrication process and surface images obtained by high-powered microscope
    Surface roughness of crystalline microcavity obtained by test. (a) Surface roughness after rough cast; (b) surface roughness after fine cast
    Fig. 4. Surface roughness of crystalline microcavity obtained by test. (a) Surface roughness after rough cast; (b) surface roughness after fine cast
    Test system for crystalline microcavity waveguide coupling. (a) Diagram of test system; (b) diagram of waveguide coupling system; (c) experimental photograph of coupling system
    Fig. 5. Test system for crystalline microcavity waveguide coupling. (a) Diagram of test system; (b) diagram of waveguide coupling system; (c) experimental photograph of coupling system
    Resonant spectra excited after rough cast
    Fig. 6. Resonant spectra excited after rough cast
    Resonant spectra excited after fine cast
    Fig. 7. Resonant spectra excited after fine cast
    Statistical results of Q factor and FSR. (a) Statistical result of Q factor of resonant mode excited by rough cast; (b) statistical result of Q factor of resonant mode excited by fine cast; (c) statistical result of FSR of resonant mode after rough cast; (d) maximum Q factor after fine cast
    Fig. 8. Statistical results of Q factor and FSR. (a) Statistical result of Q factor of resonant mode excited by rough cast; (b) statistical result of Q factor of resonant mode excited by fine cast; (c) statistical result of FSR of resonant mode after rough cast; (d) maximum Q factor after fine cast
    Mengyu Wang, Yu Yang, Tao Wu, Bin Liu, Yanjun Fu, Keyi Wang. Fabrication and Resonance Characteristic Analysis of Spheroid Calcium Fluoride Millimeter Crystalline Microcavity[J]. Acta Optica Sinica, 2021, 41(8): 0823019
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